Material Composition | Automotive parts, electronic components | Industry: 60/40 ABS/PC (typical blend) Base: 70/30 ratio (ISO 17025) Advanced: 75/25 ▲5% (enhanced strength) | Base balances durability/rigidity; Advanced improves tensile strength by 15% | Higher ABS content increases cost by ~12% compared to standard blends |
Heat Deflection Temp (HDT) | High-temp industrial applications | Industry: 80°C (ISO 75) Base: 85°C ▲5°C (ISO 75) Advanced: 90°C ▲▲5°C (ISO 75) | Base maintains integrity at 85°C; Advanced withstands 90°C prolonged exposure | Standard materials deform above 80°C; Advanced requires specialized molds |
Chemical Resistance | Chemical storage, lab equipment | Industry: 30 exposures (ASTM D543) Base: 50+ ▲20 (ASTM D543) Advanced: 70+ ▲▲20 (ASTM D543) | Base resists common acids/bases; Advanced handles aggressive solvents | Standard fails with strong acids/bases; Advanced needs pre-treatment for some chemicals |
Compliance Certifications | EU/US market exports | Industry: Basic RoHS Base: RoHS + PAHS ▲ (IEC 62321) Advanced: RoHS/PAHS/REACH ▲▲ (IEC 62321) | Base meets EU safety; Advanced adds REACH for global compliance | Non-certified alternatives face import bans; Advanced requires extra testing |
New Energy Application | EV batteries, solar panels | Industry: General-purpose grades Base: EV-optimized injection grade (ISO 294) Advanced: High-flow ▲ (ISO 294) | Base suits standard EV parts; Advanced enables intricate battery casings | Standard grades fail EV safety specs; Advanced needs high-pressure injection |
Recyclability | Sustainable manufacturing | Industry: 0% recycled Base: 20% post-consumer ▲ (ISO 14021) Advanced: 30% ▲▲ (reduces carbon by 20%) | Base cuts waste; Advanced lowers environmental impact by 20% | Sorting recycled content adds ~8% processing cost; Advanced may require blending |